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Sex-Dimorphic and Sex Hormone-Dependent Role of Steroid Sulfatase in Adipose Inflammation and Energy Homeostasis

机译:类固醇硫酸酶在脂肪炎症和能量稳态中的性别二核和性激素依赖性作用

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摘要

Steroid sulfatase (STS), a desulfating enzyme that converts steroid sulfates to hormonally active steroids, plays an important role in the homeostasis of sex hormones. STS is expressed in the adipose tissue of both male and female mice, but the role of STS in the development and function of adipose tissue remains largely unknown. In this report, we show that the adipose expression of Sts was induced in the high-fat diet (HFD) and ob/ob models of obesity and type 2 diabetes. Transgenic overexpression of the human STS in the adipose tissue of male mice exacerbated the HFD-induced metabolic phenotypes, including increased body weight gain and fat mass, and worsened insulin sensitivity, glucose tolerance, and energy expenditure, which were accounted for by adipocyte hypertrophy, increased adipose inflammation, and dysregulation of adipogenesis. The metabolic harm of the STS transgene appeared to have resulted from increased androgen activity in the adipose tissue, and castration abolished most of the phenotypes. Interestingly, the transgenic effects were sex specific, because the HFD-fed female STS transgenic mice exhibited improved metabolic functions, which were associated with attenuated adipose inflammation. The metabolic benefit of the STS transgene in female mice was accounted for by increased estrogenic activity in the adipose tissue, whereas such benefit was abolished upon ovariectomy. Our results revealed an essential role of the adipose STS in energy homeostasis in sex- and sex hormone-dependent manner. The adipose STS may represent a therapeutic target for the management of obesity and type 2 diabetes.
机译:类固醇硫酸酶(STS),将类固醇硫酸盐转化为激素活性类固醇的脱硫酶,在性激素的稳态中起重要作用。 STS在雄性和雌性小鼠的脂肪组织中表达,但STS在脂肪组织的发育和功能中的作用仍然未知。在本报告中,我们表明STS的脂肪表达诱导在高脂饮食(HFD)和OB / OB模型中肥胖和2型糖尿病。在雄性小鼠的脂肪组织中的人体STS的转基因过表达加剧了HFD诱导的代谢表型,包括增加体重增加和脂肪质量,并恶化的胰岛素敏感性,葡萄糖耐量和能量消耗,其被脂肪细胞肥大占,增加脂肪炎症,脂肪发生的厌食症。 STS转基因的代谢危害似乎是由于脂肪组织中的雄激素活性增加,并且废除了大部分表型的阉割。有趣的是,转基因效应是特异性的性,因为HFD喂养的雌性STS转基因小鼠表现出改善的代谢功能,其与减毒脂肪炎症相关。通过增加脂肪组织中的雌激素活性来占雌性小鼠中的STS转基因的代谢益处,而这种益处被废除在卵巢切除术后。我们的结果揭示了Adipose STS在能源稳态中性爱和性激素依赖的方式的重要作用。脂肪STS可以代表肥胖和2型糖尿病的治疗靶标。

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  • 来源
    《Endocrinology》 |2018年第9期|共13页
  • 作者单位

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

    Capital Med Univ Beijing Tiantan Hosp Dept Neurosurg Beijing 100050 Peoples R China;

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

    Gaikwad Steroid Lab Davis CA 95616 USA;

    Duquesne Univ Dept Biol Sci Pittsburgh PA 15282 USA;

    Univ Pittsburgh Ctr Pharmacogenet 306 Salk Pavil Pittsburgh PA 15261 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

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